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猕猴V1区中尖峰活动与局部场电位的空间整合和周围抑制特性比较

Comparison of spatial integration and surround suppression characteristics in spiking activity and the local field potential in macaque V1.

作者信息

Gieselmann M A, Thiele A

机构信息

Institute of Neuroscience, Henry Wellcome Building, Framlington Place Newcastle University, Newcastle upon Tyne, UK.

出版信息

Eur J Neurosci. 2008 Aug;28(3):447-59. doi: 10.1111/j.1460-9568.2008.06358.x.

Abstract

Neurons in primary visual cortex exhibit well documented centre-surround receptive field organization, whereby the centre is dominated by excitatory influences and the surround is generally dominated by inhibitory influences. These effects have largely been established by measuring the output of neurons, i.e. their spiking activity. How excitation and inhibition are reflected in the local field potential (LFP) is little understood. As this can bear on the interpretation of human fMRI BOLD data and on our understanding of the mechanisms of local field potential oscillations, we measured spatial integration and centre-surround properties in single- and multiunit recordings of V1 in the awake fixating macaque monkey, and compared these to spectral power in different frequency bands of simultaneously recorded LFPs. We quantified centre-surround organization by determining the size of the summation and suppression area in spiking activity as well as in different frequency bands of the LFP, with the main focus on the gamma band. Gratings extending beyond the summation area usually inhibited spiking activity while the LFP gamma-band activity increased monotonically for all grating sizes. This increase was maximal for stimuli infringing upon the near classical receptive field surround, where suppression started to dominate spiking activity. Thus, suppressive influences in primary cortex can be inferred from spiking activity, but they also seem to affect specific features of gamma-band LFP activity.

摘要

初级视皮层中的神经元表现出有充分记录的中心-外周感受野组织,即中心主要受兴奋性影响,而外周通常受抑制性影响。这些效应很大程度上是通过测量神经元的输出,即它们的放电活动来确定的。关于兴奋和抑制如何在局部场电位(LFP)中体现,人们了解得很少。由于这可能影响对人类功能磁共振成像血氧水平依赖(BOLD)数据的解释以及我们对局部场电位振荡机制的理解,我们在清醒的注视猕猴的V1区单单元和多单元记录中测量了空间整合和中心-外周特性,并将这些与同时记录的LFP不同频段的频谱功率进行比较。我们通过确定放电活动以及LFP不同频段中总和与抑制区域的大小来量化中心-外周组织,主要关注γ频段。超出总和区域的光栅通常会抑制放电活动,而对于所有光栅大小,LFP的γ频段活动都会单调增加。对于侵犯近经典感受野外周的刺激,这种增加最大,此时抑制开始主导放电活动。因此,初级皮层中的抑制性影响可以从放电活动中推断出来,但它们似乎也会影响γ频段LFP活动的特定特征。

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